Rocscience.Slide.v5.042 倾斜稳定性分析

Rocscience.Slide.v5.042倾斜稳定性分析Slide5.是目前

  • 80分
  • 浏览次数:395
  • 行业分类:石油化工
软件大小: 未知
软件授权:免费
上传时间:2021-12-26

Rocscience.Slide.v5.042 倾斜稳定性分析
Slide5.是目前可用的最全面的倾斜稳定性分析软件,完整地包括了灵敏度、概率和背面分析功能。这个二维软件结合了诱人、易用的基于CAD的图形界面,它还一个范围很广的建模和数据解释选项,可以使你更加快速彻底地完成分析任务。 Slide 5.0 is the most comprehensive slope stability analysis software available, complete with sensitivity, probabilistic and back analysis capabilities. This 2-D program combines an attractive, easy to use CAD based graphical interface with a wide range of modeling and data interpretation options that enable you to perform analyses more thoroughly, more quickly.  Using Slide 5.0, you may determine the probability of failure and reliability index for either the deterministic failure surface with the smallest factor of safety, or for the entire slope. Sensitivity capabilities allow you to easily determine the effect of any parameter on the factor of safety. Determine which parameter has the most effect and optimize your slope remediation based on this knowledge. Slide 5.0 is the only slope stability software to include built-in steady-state unsaturated groundwater analysis capabilities using the finite-element method. Calculate pore-pressures, heads, discharge using geometry from your slope stability analysis. Meshing is all automatic and done at the click of a button. Pore pressures are seamlessly integrated into your slope stability analysis. Slide 5.0 easily models complex slope geometry. Draw the interface as you would in any CAD or drawing program or import a scanned image of your slope and digitize over it. Man-made and natural slopes with complex layering, soil lenses, and inclusions are easily modeled. Earth dams with complex core and shell geometries are also easily modeled. The simple to use editing tools provide a convenient method for performing parametric studies. The graphical data interpreter provides a rich set of tools for the convenient display of model results. With Slide 5.0, you can very quickly and easily create a model, perform a stability analysis, and interpret the results. 
 
 

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